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古菌的遗传技术。

Genetic techniques for the archaea.

机构信息

Department of Microbiology and Center for RNA Biology, Ohio State University, Columbus, Ohio 43210.

出版信息

Annu Rev Genet. 2013;47:539-61. doi: 10.1146/annurev-genet-111212-133225. Epub 2013 Sep 18.

Abstract

Genetic techniques for the Archaea have undergone a rapid expansion in complexity, resulting in increased exploration of the role of Archaea in the environment and detailed analyses of the molecular physiology and information-processing systems in the third domain of life. Complementary gains in describing the ever-increasing diversity of archaeal organisms have allowed these techniques to be leveraged in new and imaginative ways to elucidate shared and unique aspects of archaeal diversity and metabolism. In this review, we introduce the four archaeal clades for which advanced genetic techniques are available--the methanogens, halophiles, Sulfolobales, and Thermococcales--with the aim of providing an overall profile of the advantages and disadvantages of working within each clade, as essentially all of the genetically accessible archaeal organisms require unique culturing techniques that present real challenges. We discuss the full repertoire of techniques possible within these clades while highlighting the recent advances that have been made by taking advantage of the most prominent techniques and approaches.

摘要

遗传技术在古菌中经历了快速的复杂性扩张,从而增加了对古菌在环境中的作用的探索,并对生命第三域的分子生理学和信息处理系统进行了详细分析。在描述不断增加的古菌生物多样性方面的互补性进展,使得这些技术能够以新颖和富有想象力的方式加以利用,以阐明古菌多样性和新陈代谢的共同和独特方面。在这篇综述中,我们介绍了具有先进遗传技术的四个古菌进化枝——产甲烷菌、嗜盐菌、硫杆菌和热球菌——旨在提供在每个进化枝内工作的优缺点的总体概述,因为基本上所有可遗传的古菌都需要独特的培养技术,这确实带来了挑战。我们讨论了这些进化枝中可能存在的全部技术,同时强调了利用最突出的技术和方法取得的最新进展。

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